1. In the circuit shown in the figure, R1 = 93 ohm RI SOU2 10052 0. SA 100 uF Figure 1: Figure 1 (a) What are in(t = 0-), iL(t = 0+) and in(t = 0)? (b) What are vr (t = 0-), vL(t = 0+) and vL(t = 0)? (c) What are ic(t = 0-), ic(t = 0+) and ic(t = 0)? (d) What are vc(t = 0-), vc(t = 0+) and vc(t = o)? (e) What are iR(t = 0-), in(t = 0+) and ir(t = x)? %3D %3D (f) What are vR(t 0-), vR(t = 0+) and vR(t= ox)?
1. In the circuit shown in the figure, R1 = 93 ohm RI SOU2 10052 0. SA 100 uF Figure 1: Figure 1 (a) What are in(t = 0-), iL(t = 0+) and in(t = 0)? (b) What are vr (t = 0-), vL(t = 0+) and vL(t = 0)? (c) What are ic(t = 0-), ic(t = 0+) and ic(t = 0)? (d) What are vc(t = 0-), vc(t = 0+) and vc(t = o)? (e) What are iR(t = 0-), in(t = 0+) and ir(t = x)? %3D %3D (f) What are vR(t 0-), vR(t = 0+) and vR(t= ox)?
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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![1. In the circuit shown in the figure, R1 = 93 ohm
RI
SOU2
16052 0
SA
100 uF
SomH U.
Figure 1: Figure 1
(a) What are in(t = 0-), iL(t = 0+) and iL (t = 00)?
(b) What are vr (t = 0-), vL(t = 0+) and vL(t = 0)?
(c) What are ic(t = 0-), ic(t = 0+) and ic(t = 0)?
(d) What are vc(t = 0-), vc(t = 0+) and vc(t = 0)?
(e) What are iR(t = 0-), ir(t = 0+) and ir(t = 0)?
%3D
%3D
(f) What are vR(t = 0-), vR(t = +) and vR(t = ox)?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Faf197cb4-86e6-4124-bbdf-d4f4921bbf62%2F91f77eb7-f8d3-412a-a98c-3a11ba5b2625%2F9oxtz24_processed.jpeg&w=3840&q=75)
Transcribed Image Text:1. In the circuit shown in the figure, R1 = 93 ohm
RI
SOU2
16052 0
SA
100 uF
SomH U.
Figure 1: Figure 1
(a) What are in(t = 0-), iL(t = 0+) and iL (t = 00)?
(b) What are vr (t = 0-), vL(t = 0+) and vL(t = 0)?
(c) What are ic(t = 0-), ic(t = 0+) and ic(t = 0)?
(d) What are vc(t = 0-), vc(t = 0+) and vc(t = 0)?
(e) What are iR(t = 0-), ir(t = 0+) and ir(t = 0)?
%3D
%3D
(f) What are vR(t = 0-), vR(t = +) and vR(t = ox)?
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